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本文引用的文献

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Waxy protein deficiency and chromosomal location of coding genes in common wheat.普通小麦蜡质蛋白缺陷与编码基因的染色体定位。
Theor Appl Genet. 1994 Oct;89(2-3):179-84. doi: 10.1007/BF00225138.
2
Variation of starch granule proteins and chromosome mapping of their coding genes in common wheat.普通小麦淀粉粒蛋白的变异及其编码基因的染色体定位。
Theor Appl Genet. 1996 Jul;93(1-2):275-81. doi: 10.1007/BF00225757.
3
Evidence for independent genetic control of the multiple forms of maize endosperm branching enzymes and starch synthases.玉米胚乳分支酶和淀粉合酶多种形式受独立遗传控制的证据。
Plant Physiol. 1981 Jun;67(6):1141-5. doi: 10.1104/pp.67.6.1141.
4
The localization and expression of the class II starch synthases of wheat.小麦Ⅱ类淀粉合成酶的定位与表达
Plant Physiol. 1999 Aug;120(4):1147-56. doi: 10.1104/pp.120.4.1147.
5
ChloroP, a neural network-based method for predicting chloroplast transit peptides and their cleavage sites.ChloroP,一种基于神经网络的预测叶绿体转运肽及其切割位点的方法。
Protein Sci. 1999 May;8(5):978-84. doi: 10.1110/ps.8.5.978.
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Identification of the soluble starch synthase activities of maize endosperm.玉米胚乳可溶性淀粉合酶活性的鉴定
Plant Physiol. 1999 May;120(1):205-16. doi: 10.1104/pp.120.1.205.
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Simultaneous antisense inhibition of two starch-synthase isoforms in potato tubers leads to accumulation of grossly modified amylopectin.马铃薯块茎中两种淀粉合酶同工型的同时反义抑制导致高度修饰的支链淀粉积累。
Biochem J. 1999 Mar 1;338 ( Pt 2)(Pt 2):515-21.
8
Isolation and characterization of the zSSIIa and zSSIIb starch synthase cDNA clones from maize endosperm.从玉米胚乳中分离并鉴定zSSIIa和zSSIIb淀粉合酶cDNA克隆
Plant Mol Biol. 1998 Jul;37(4):639-49. doi: 10.1023/a:1006079009072.
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Molecular cloning of starch synthase I from maize (W64) endosperm and expression in Escherichia coli.来自玉米(W64)胚乳的淀粉合酶I的分子克隆及其在大肠杆菌中的表达。
Plant J. 1998 Jun;14(5):613-22. doi: 10.1046/j.1365-313x.1998.00150.x.
10
Polypeptides of the maize amyloplast stroma. Stromal localization of starch-biosynthetic enzymes and identification of an 81-kilodalton amyloplast stromal heat-shock cognate.玉米造粉体基质中的多肽。淀粉生物合成酶的基质定位以及一种81千道尔顿造粉体基质热激同源蛋白的鉴定。
Plant Physiol. 1998 Apr;116(4):1451-60. doi: 10.1104/pp.116.4.1451.

小麦淀粉合酶III基因的结构与表达。表达基因中的基序定义了淀粉合酶III基因家族的谱系。

The structure and expression of the wheat starch synthase III gene. Motifs in the expressed gene define the lineage of the starch synthase III gene family.

作者信息

Li Z, Mouille G, Kosar-Hashemi B, Rahman S, Clarke B, Gale K R, Appels R, Morell M K

机构信息

Commonwealth Scientific and Industrial Research Organization, Division of Plant Industry, Canberra, Australian Capital Territory.

出版信息

Plant Physiol. 2000 Jun;123(2):613-24. doi: 10.1104/pp.123.2.613.

DOI:10.1104/pp.123.2.613
PMID:10859191
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC59029/
Abstract

The endosperm of hexaploid wheat (Triticum aestivum [L.]) was shown to contain a high molecular weight starch synthase (SS) analogous to the product of the maize du1 gene, starch synthase III (SSIII; DU1). cDNA and genomic DNA sequences encoding wheat SSIII were isolated and characterized. The wheat SSIII cDNA is 5,346 bp long and contains an open reading frame that encodes a 1,628-amino acid polypeptide. A putative N-terminal transit peptide, a 436-amino acid C-terminal catalytic domain, and a central 470-amino acid SSIII-specific domain containing three regions of repeated amino acid similarity were identified in the wheat gene. A fourth region between the transit peptide and the SSIII-specific domain contains repeat motifs that are variable with respect to motif sequence and repeat number between wheat and maize. In dicots, this N-terminal region does not contain repeat motifs and is truncated. The gene encoding wheat SSIII, designated ss3, consists of 16 exons extending over 10 kb, and is located on wheat chromosome I. Expression of ss3 mRNA in wheat was detected in leaves, pre-anthesis florets, and from very early to middle stage of endosperm development. The entire N-terminal variable repeat region and the majority of the SSIII-specific domain are encoded on a single 2,703-bp exon. A gene encoding a class III SS from the Arabidopsis genome sequencing project shows a strongly conserved exon structure to the wheat ss3 gene, with the exception of the N-terminal region. The evolutionary relationships of the genes encoding monocot and dicot class III SSs are discussed.

摘要

六倍体小麦(普通小麦[Triticum aestivum (L.)])的胚乳被证明含有一种高分子量淀粉合酶(SS),类似于玉米du1基因的产物,即淀粉合酶III(SSIII;DU1)。分离并鉴定了编码小麦SSIII的cDNA和基因组DNA序列。小麦SSIII cDNA长5346 bp,包含一个编码1628个氨基酸多肽的开放阅读框。在小麦基因中鉴定出一个推定的N端转运肽、一个436个氨基酸的C端催化结构域,以及一个包含三个重复氨基酸相似区域的中央470个氨基酸的SSIII特异性结构域。转运肽和SSIII特异性结构域之间的第四个区域包含重复基序,这些基序在小麦和玉米之间的基序序列和重复次数方面是可变的。在双子叶植物中,这个N端区域不包含重复基序且被截断。编码小麦SSIII的基因命名为ss3,由16个外显子组成,跨越10 kb,位于小麦第一号染色体上。在小麦的叶片、花前小花以及胚乳发育的早期到中期都检测到了ss3 mRNA的表达。整个N端可变重复区域和大部分SSIII特异性结构域由一个2703 bp的单一外显子编码。来自拟南芥基因组测序项目的一个编码III类SS的基因与小麦ss3基因显示出高度保守的外显子结构,但N端区域除外。讨论了单子叶植物和双子叶植物III类SS编码基因的进化关系。